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This book explores the conversion for solar energy into renewable
liquid fuels through electrochemical reactions. The first section
of the book is devoted to the theoretical fundamentals of solar
fuels production, focusing on the surface properties of
semiconductor materials in contact with aqueous solutions and the
reaction mechanisms. The second section describes a collection of
current, relevant characterization techniques, which provide
essential information of the band structure of the semiconductors
and carrier dynamics at the interface semiconductor. The third, and
last section comprises the most recent developments in materials
and engineered structures to optimize the performance of
solar-to-fuel conversion devices.
This book explores the conversion for solar energy into renewable
liquid fuels through electrochemical reactions. The first section
of the book is devoted to the theoretical fundamentals of solar
fuels production, focusing on the surface properties of
semiconductor materials in contact with aqueous solutions and the
reaction mechanisms. The second section describes a collection of
current, relevant characterization techniques, which provide
essential information of the band structure of the semiconductors
and carrier dynamics at the interface semiconductor. The third, and
last section comprises the most recent developments in materials
and engineered structures to optimize the performance of
solar-to-fuel conversion devices.
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